Poletti Mark A, Svensson U Peter
Industrial Research Limited, P.O. Box 31-310, Lower Hutt, Wellington 5040, New Zealand.
J Acoust Soc Am. 2008 Jul;124(1):301-15. doi: 10.1121/1.2924206.
Auditorium designs can be evaluated prior to construction by numerical modeling of the design. High-accuracy numerical modeling produces the sound pressure on a rectangular grid, and subjective assessment of the design requires auralization of the sampled sound field at a desired listener position. This paper investigates the production of binaural outputs from the sound pressure at a selected number of grid points by using a least squares beam forming approach. Low-frequency axisymmetric emulations are derived by assuming a solid sphere model of the head, and a spherical array of 640 microphones is used to emulate ten measured head-related transfer function (HRTF) data sets from the CIPIC database for half the audio bandwidth. The spherical array can produce high-accuracy band-limited emulation of any human subject's measured HRTFs for a fixed listener position by using individual sets of beam forming impulse responses.
在礼堂设计施工前,可以通过对设计进行数值建模来评估。高精度数值建模会生成矩形网格上的声压,而对设计的主观评估则需要在期望的听众位置对采样声场进行听觉化处理。本文研究了使用最小二乘波束形成方法从选定数量网格点处的声压生成双耳输出。通过假设头部的实心球体模型来推导低频轴对称仿真,并使用640个麦克风的球形阵列来模拟来自CIPIC数据库的十个测量的头部相关传递函数(HRTF)数据集,用于音频带宽的一半。通过使用单独的波束形成脉冲响应集,球形阵列可以在固定听众位置为任何人类受试者的测量HRTF生成高精度的带限仿真。